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CD22-Binding Synthetic Sialosides Regulate B Lymphocyte Proliferation Through CD22 Ligand-Dependent and Independent Pathways, and Enhance Antibody Production in Mice

Sialic acid-binding immunoglobulin-like lectins (Siglecs) are expressed in various immune cells and most of them carry signaling functions. High-affinity synthetic sialoside ligands have been developed for various Siglecs. Therapeutic potentials of the nanoparticles and compounds that contain multip...

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Autores principales: Matsubara, Naoko, Imamura, Akihiro, Yonemizu, Tatsuya, Akatsu, Chizuru, Yang, Hongrui, Ueki, Akiharu, Watanabe, Natsuki, Abdu-Allah, Hajjaj, Numoto, Nobutaka, Takematsu, Hiromu, Kitazume, Shinobu, Tedder, Thomas F., Marth, Jamey D., Ito, Nobutoshi, Ando, Hiromune, Ishida, Hideharu, Kiso, Makoto, Tsubata, Takeshi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5917077/
https://www.ncbi.nlm.nih.gov/pubmed/29725338
http://dx.doi.org/10.3389/fimmu.2018.00820
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author Matsubara, Naoko
Imamura, Akihiro
Yonemizu, Tatsuya
Akatsu, Chizuru
Yang, Hongrui
Ueki, Akiharu
Watanabe, Natsuki
Abdu-Allah, Hajjaj
Numoto, Nobutaka
Takematsu, Hiromu
Kitazume, Shinobu
Tedder, Thomas F.
Marth, Jamey D.
Ito, Nobutoshi
Ando, Hiromune
Ishida, Hideharu
Kiso, Makoto
Tsubata, Takeshi
author_facet Matsubara, Naoko
Imamura, Akihiro
Yonemizu, Tatsuya
Akatsu, Chizuru
Yang, Hongrui
Ueki, Akiharu
Watanabe, Natsuki
Abdu-Allah, Hajjaj
Numoto, Nobutaka
Takematsu, Hiromu
Kitazume, Shinobu
Tedder, Thomas F.
Marth, Jamey D.
Ito, Nobutoshi
Ando, Hiromune
Ishida, Hideharu
Kiso, Makoto
Tsubata, Takeshi
author_sort Matsubara, Naoko
collection PubMed
description Sialic acid-binding immunoglobulin-like lectins (Siglecs) are expressed in various immune cells and most of them carry signaling functions. High-affinity synthetic sialoside ligands have been developed for various Siglecs. Therapeutic potentials of the nanoparticles and compounds that contain multiple numbers of these sialosides and other reagents such as toxins and antigens have been demonstrated. However, whether immune responses can be regulated by monomeric sialoside ligands has not yet been known. CD22 (also known as Siglec-2) is an inhibitory molecule preferentially expressed in B lymphocytes (B cells) and is constitutively bound and functionally regulated by α2,6 sialic acids expressed on the same cell (cis-ligands). Here, we developed synthetic sialosides GSC718 and GSC839 that bind to CD22 with high affinity (IC(50) ~100 nM), and inhibit ligand binding of CD22. When B cells are activated by B cell antigen receptor (BCR) ligation, both GSC718 and GSC839 downregulate proliferation of B cells, and this regulation requires both CD22 and α2,6 sialic acids. This result suggests that these sialosides regulate BCR ligation-induced B cell activation by reversing endogenous ligand-mediated regulation of CD22. By contrast, GSC718 and GSC839 augment B cell proliferation induced by TLR ligands or CD40 ligation, and this augmentation requires CD22 but not α2,6 sialic acids. Thus, these sialosides appear to enhance B cell activation by directly suppressing the inhibitory function of CD22 independently of endogenous ligand-mediated regulation. Moreover, GSC839 augments B cell proliferation that depends on both BCR ligation and CD40 ligation as is the case for in vivo B cell responses to antigens, and enhanced antibody production to the extent comparable to CpG oligonuleotides or a small amount of alum. Although these known adjuvants induce production of the inflammatory cytokines or accumulation of inflammatory cells, CD22-binding sialosides do not. Thus, synthetic sialosides that bind to CD22 with high-affinity modulate B cell activation through endogenous ligand-dependent and independent pathways, and carry an adjuvant activity without inducing inflammation.
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spelling pubmed-59170772018-05-03 CD22-Binding Synthetic Sialosides Regulate B Lymphocyte Proliferation Through CD22 Ligand-Dependent and Independent Pathways, and Enhance Antibody Production in Mice Matsubara, Naoko Imamura, Akihiro Yonemizu, Tatsuya Akatsu, Chizuru Yang, Hongrui Ueki, Akiharu Watanabe, Natsuki Abdu-Allah, Hajjaj Numoto, Nobutaka Takematsu, Hiromu Kitazume, Shinobu Tedder, Thomas F. Marth, Jamey D. Ito, Nobutoshi Ando, Hiromune Ishida, Hideharu Kiso, Makoto Tsubata, Takeshi Front Immunol Immunology Sialic acid-binding immunoglobulin-like lectins (Siglecs) are expressed in various immune cells and most of them carry signaling functions. High-affinity synthetic sialoside ligands have been developed for various Siglecs. Therapeutic potentials of the nanoparticles and compounds that contain multiple numbers of these sialosides and other reagents such as toxins and antigens have been demonstrated. However, whether immune responses can be regulated by monomeric sialoside ligands has not yet been known. CD22 (also known as Siglec-2) is an inhibitory molecule preferentially expressed in B lymphocytes (B cells) and is constitutively bound and functionally regulated by α2,6 sialic acids expressed on the same cell (cis-ligands). Here, we developed synthetic sialosides GSC718 and GSC839 that bind to CD22 with high affinity (IC(50) ~100 nM), and inhibit ligand binding of CD22. When B cells are activated by B cell antigen receptor (BCR) ligation, both GSC718 and GSC839 downregulate proliferation of B cells, and this regulation requires both CD22 and α2,6 sialic acids. This result suggests that these sialosides regulate BCR ligation-induced B cell activation by reversing endogenous ligand-mediated regulation of CD22. By contrast, GSC718 and GSC839 augment B cell proliferation induced by TLR ligands or CD40 ligation, and this augmentation requires CD22 but not α2,6 sialic acids. Thus, these sialosides appear to enhance B cell activation by directly suppressing the inhibitory function of CD22 independently of endogenous ligand-mediated regulation. Moreover, GSC839 augments B cell proliferation that depends on both BCR ligation and CD40 ligation as is the case for in vivo B cell responses to antigens, and enhanced antibody production to the extent comparable to CpG oligonuleotides or a small amount of alum. Although these known adjuvants induce production of the inflammatory cytokines or accumulation of inflammatory cells, CD22-binding sialosides do not. Thus, synthetic sialosides that bind to CD22 with high-affinity modulate B cell activation through endogenous ligand-dependent and independent pathways, and carry an adjuvant activity without inducing inflammation. Frontiers Media S.A. 2018-04-19 /pmc/articles/PMC5917077/ /pubmed/29725338 http://dx.doi.org/10.3389/fimmu.2018.00820 Text en Copyright © 2018 Matsubara, Imamura, Yonemizu, Akatsu, Yang, Ueki, Watanabe, Abdu-Allah, Numoto, Takematsu, Kitazume, Tedder, Marth, Ito, Ando, Ishida, Kiso and Tsubata. https://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Immunology
Matsubara, Naoko
Imamura, Akihiro
Yonemizu, Tatsuya
Akatsu, Chizuru
Yang, Hongrui
Ueki, Akiharu
Watanabe, Natsuki
Abdu-Allah, Hajjaj
Numoto, Nobutaka
Takematsu, Hiromu
Kitazume, Shinobu
Tedder, Thomas F.
Marth, Jamey D.
Ito, Nobutoshi
Ando, Hiromune
Ishida, Hideharu
Kiso, Makoto
Tsubata, Takeshi
CD22-Binding Synthetic Sialosides Regulate B Lymphocyte Proliferation Through CD22 Ligand-Dependent and Independent Pathways, and Enhance Antibody Production in Mice
title CD22-Binding Synthetic Sialosides Regulate B Lymphocyte Proliferation Through CD22 Ligand-Dependent and Independent Pathways, and Enhance Antibody Production in Mice
title_full CD22-Binding Synthetic Sialosides Regulate B Lymphocyte Proliferation Through CD22 Ligand-Dependent and Independent Pathways, and Enhance Antibody Production in Mice
title_fullStr CD22-Binding Synthetic Sialosides Regulate B Lymphocyte Proliferation Through CD22 Ligand-Dependent and Independent Pathways, and Enhance Antibody Production in Mice
title_full_unstemmed CD22-Binding Synthetic Sialosides Regulate B Lymphocyte Proliferation Through CD22 Ligand-Dependent and Independent Pathways, and Enhance Antibody Production in Mice
title_short CD22-Binding Synthetic Sialosides Regulate B Lymphocyte Proliferation Through CD22 Ligand-Dependent and Independent Pathways, and Enhance Antibody Production in Mice
title_sort cd22-binding synthetic sialosides regulate b lymphocyte proliferation through cd22 ligand-dependent and independent pathways, and enhance antibody production in mice
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5917077/
https://www.ncbi.nlm.nih.gov/pubmed/29725338
http://dx.doi.org/10.3389/fimmu.2018.00820
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